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Using Polar Coronal Hole Area Measurements to Determine the Solar Polar Magnetic Field Reversal in Solar Cycle 24

机译:使用极冠孔面积测量来确定太阳周期24中太阳极磁场的反转

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摘要

An analysis of solar polar coronal hole (PCH) areas since the launch of the Solar Dynamics Observatory (SDO) shows how the polar regions have evolved during Solar Cycle 24.We present PCH areas from mid-2010 through 2013 using data from the Atmospheric Imager Assembly (AIA) and Helioseismic and Magnetic Imager (HMI) instruments onboard SDO. Our analysis shows that both the northern and southern PCH areas have decreased significantly in size since 2010. Linear fits to the areas derived from the magnetic-field properties indicate that, although the northern hemisphere went through polar-field reversal and reached solar-maximum conditions in mid-2012, the southern hemisphere had not reached solar-maximum conditions in the polar regions by the end of 2013. Our results show that solar-maximum conditions in each hemisphere, as measured by the area of the polar coronal holes and polar magnetic field, will be offset in time.
机译:自太阳动力学天文台(SDO)发射以来对太阳极冠孔(PCH)区域的分析显示了太阳活动24期间极地区域的演变。我们使用大气成像仪的数据显示了2010年中至2013年的PCH区域。 SDO板上的装配(AIA)和流变和磁成像仪(HMI)仪器。我们的分析表明,自2010年以来,北部和南部PCH区域的面积均显着减小。与磁场性质推导的区域的线性拟合表明,尽管北半球经历了极场反转并达到了太阳最大条件在2012年中,到2013年底,南半球在极地地区还没有达到太阳最大条件。我们的研究结果显示,通过极地日冕孔和极地磁场的面积来测量每个半球的太阳最大条件字段,将在时间上偏移。

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